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논문투고 상세 논문명(한글), 논문명(영문), 성과주관부서, 품목코드, 학술지명, 주저자, 성과년도, 성과적용일 제공
| 논문명(한글) |
|
| 논문명(영문) |
Growth Characteristics, Blood Biochemistry,Histology, and Metabolic Profile of Muscle andDifferent Tissues: Toxicity Study of Deoxynivalenol |
| 성과주관부서 |
국립축산과학원 축산생명환경부 가축정밀영양과 |
| 품목코드 |
축산 / 중가축 / 돼지 |
| 학술지명 |
Food Science of Animal Resources |
주저자 |
정진영 |
| 성과년도 |
2021 |
성과적용일 |
2025년12월 |
Deoxynivalenol (DON) toxicity causes oxidative stress, immunological
disorders, and gastrointestinal injury, thereby reducing animal survival and productivity.
Pigs are particularly susceptible to DON; therefore, clear standards for DON levels in
animal feed are essential. Therefore, we investigated the growth characteristics, biochemistry,
histology, and metabolite profiles of growing pigs fed dietary DON levels. Twelve pigs
were randomized to one of four diets for 28 d: 1) CON, control group fed conventional
diets; 2) T1, 1 mg; 3) T2, 3 mg; and 4) T3, 10 mg DON/kg conventional diet. The results
revealed that the final body weight of the growing pigs in the T3 group was the lowest
among all DON-treated groups (p<0.05). Additionally, the T3 group demonstrated the
highest blood alkaline phosphate levels, whereas the T2 and T3 treatment groups
exhibited reduced lipase levels compared to the other groups (p<0.01). Histological
analysis showed that fibrosis increased in the muscle, liver, and other tissues, while
apoptosis increased in the liver and ileum with increasing DON levels. Metabolomic
profiling revealed that several metabolic pathways, such as purine metabolism, were
involved in the weight loss induced by DON toxicity. In conclusion, our study suggests
that DON levels above the maximum residue limits have adverse effects on growing pigs
and that these effects are caused by altered metabolites.